Green-to-red photoconvertible Dronpa mutant for multimodal super-resolution fluorescence microscopy.

Moeyaert, Benjamien; Nguyen Bich, Ngan; De Zitter, Elke; Rocha, Susana; Clays, Koen; Mizuno, Hideaki; van Meervelt, Luc; Hofkens, Johan et al. · ACS Nano · 2014

basic_science · Level V

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Abstract

Advanced imaging techniques crucially depend on the labels used. In this work, we present the structure-guided design of a fluorescent protein that displays both reversibly photochromic and green-to-red photoconversion behavior. We first designed ffDronpa, a mutant of the photochromic fluorescent protein Dronpa that matures up to three times faster while retaining its interesting photochromic features. Using a combined evolutionary and structure-driven rational design strategy, we developed a green-to-red photoconvertible ffDronpa mutant, called pcDronpa, and explored different optimization strategies that resulted in its improved version, pcDronpa2. This fluorescent probe combines a high brightness with low photobleaching and photoblinking. We herein show that, despite its tetrameric nature, pcDronpa2 allows for multimodal subdiffraction imaging by sequentially imaging a given sample using both super-resolution fluctuation imaging and localization microscopy.